4.4 Article

A novel medical image data-based multi-physics simulation platform for computational life sciences

期刊

INTERFACE FOCUS
卷 3, 期 2, 页码 -

出版社

ROYAL SOC
DOI: 10.1098/rsfs.2012.0058

关键词

computational life sciences; multi-physics; modelling; anatomical models; image based; high-performance computing

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资金

  1. CTI
  2. SNSF CO-ME
  3. SciEx
  4. ISJRP

向作者/读者索取更多资源

Simulating and modelling complex biological systems in computational life sciences requires specialized software tools that can perform medical image data-based modelling, jointly visualize the data and computational results, and handle large, complex, realistic and often noisy anatomical models. The required novel solvers must provide the power to model the physics, biology and physiology of living tissue within the full complexity of the human anatomy (e. g. neuronal activity, perfusion and ultrasound propagation). A multi-physics simulation platform satisfying these requirements has been developed for applications including device development and optimization, safety assessment, basic research, and treatment planning. This simulation platform consists of detailed, parametrized anatomical models, a segmentation and meshing tool, a wide range of solvers and optimizers, a framework for the rapid development of specialized and parallelized finite element method solvers, a visualization toolkit-based visualization engine, a PYTHON scripting interface for customized applications, a coupling framework, and more. Core components are cross-platform compatible and use open formats. Several examples of applications are presented: hyperthermia cancer treatment planning, tumour growth modelling, evaluating the magneto-haemodynamic effect as a biomarker and physics-based morphing of anatomical models.

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